JD2022-TU1/main/extern/CaptureJpeg/Source/JINCLUDE.h

114 lines
3.8 KiB
C++

// * jinclude.h
// *
// * Copyright (C) 1991-1994, Thomas G. Lane.
// * This file is part of the Independent JPEG Group's software.
// * For conditions of distribution and use, see the accompanying README file.
// *
// * This file exists to provide a single place to fix any problems with
// * including the wrong system include files. (Common problems are taken
// * care of by the standard jconfig symbols, but on really weird systems
// * you may have to edit this file.)
// *
// * NOTE: this file is NOT intended to be included by applications using the
// * JPEG library. Most applications need only include jpeglib.h.
// Include auto-config file to find out which system include files we need.
#include "JCONFIG.h" // auto configuration options
#define LONG int
#define DOUBLE float
#define BYTE unsigned char
#define JCONFIG_INCLUDED // so that jpeglib.h doesn't do it again
// * We need the NULL macro and size_t typedef.
// * On an ANSI-conforming system it is sufficient to include <stddef.h>.
// * Otherwise, we get them from <stdlib.h> or <stdio.h>; we may have to
// * pull in <sys/types.h> as well.
// * Note that the core JPEG library does not require <stdio.h>;
// * only the default error handler and data source/destination modules do.
// * But we must pull it in because of the references to FILE in jpeglib.h.
// * You can remove those references if you want to compile without <stdio.h>.
#ifdef HAVE_STDDEF_H
#include <stddef.h>
#endif
#ifdef HAVE_STDLIB_H
#include <stdlib.h>
#endif
#ifdef NEED_SYS_TYPES_H
#include <sys/types.h>
#endif
#include <stdio.h>
template <class T>
inline T BAS_Max(T a,T b)
{
return (a > b ? a : b);
}
template <class T>
inline T BAS_Min(T a,T b)
{
return (a < b ? a : b);
}
// * We need memory copying and zeroing functions, plus strncpy().
// * ANSI and System V implementations declare these in <string.h>.
// * BSD doesn't have the mem() functions, but it does have bcopy()/bzero().
// * Some systems may declare memset and memcpy in <memory.h>.
// *
// * NOTE: we assume the size parameters to these functions are of type size_t.
// * Change the casts in these macros if not!
#ifdef NEED_BSD_STRINGS
#include <strings.h>
#define MEMZERO(target,size) bzero((void *)(target), (size_t)(size))
#define MEMCOPY(dest,src,size) bcopy((const void *)(src), (void *)(dest), (size_t)(size))
#else // not BSD, assume ANSI/SysV string lib
#include <string.h>
#ifdef PSX2_TARGET
extern void *ps2memset(char *dst, unsigned char c, int size);
extern void *ps2memcpy(char *dst, char*src, int size);
#define L_memcpy ps2memcpy
#define L_memset ps2memset
#else
#define L_memcpy memcpy
#define L_memset memset
#endif
#define MEMZERO(target,size) L_memset((void *)(target), 0, (size_t)(size))
#define MEMCOPY(dest,src,size) L_memcpy((char *)(dest), (char *)(src), (size_t)(size))
#endif
// * In ANSI C, and indeed any rational implementation, size_t is also the
// * type returned by sizeof(). However, it seems there are some irrational
// * implementations out there, in which sizeof() returns an int even though
// * size_t is defined as long or unsigned long. To ensure consistent results
// * we always use this SIZEOF() macro in place of using sizeof() directly.
#define SIZEOF(object) ((size_t) sizeof(object))
// * The modules that use fread() and fwrite() always invoke them through
// * these macros. On some systems you may need to twiddle the argument casts.
// * CAUTION: argument order is different from underlying functions!
// #define JFREAD(file,buf,sizeofbuf) \
// ((size_t) fread((void *) (buf), (size_t) 1, (size_t) (sizeofbuf), (file)))
// #define JFWRITE(file,buf,sizeofbuf) \
// ((size_t) fwrite((const void *) (buf), (size_t) 1, (size_t) (sizeofbuf), (file)))
#define JFWRITE(file,buf,sizeofbuf) \
((size_t) L_memcpy((void *) file, (void *) buf , sizeofbuf))